Department of Chemical Engineering, University of Utah , Salt Lake City , Utah , USA.
Utah Center for Nanomedicine, Nano Institute of Utah, University of Utah , Salt Lake City , Utah , USA.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2019;54(12):1170-1185. doi: 10.1080/10934529.2019.1632626. Epub 2019 Jul 25.
studies are a first step toward understanding the biological effects of combustion-derived particulate matter (cdPM). A vast majority of studies expose cells to cdPM suspensions, which requires a method to collect cdPM and suspend it in an aqueous media. The consequences of different particle collection methods on particle physiochemical properties and resulting biological responses are not fully understood. This study investigated the effect of two common approaches (collection on a filter and a cold plate) and one relatively new (direct bubbling in DI water) approach to particle collection. The three approaches yielded cdPM with differences in particle size distribution, surface area, composition, and oxidative potential. The directly bubbled sample retained the smallest sized particles and the bimodal distribution observed in the gas-phase. The bubbled sample contained ∼50% of its mass as dissolved species and lower molecular weight compounds, not found in the other two samples. These differences in the cdPM properties affected the biological responses in THP-1 cells. The bubbled sample showed greater oxidative potential and cellular reactive oxygen species. The scraped sample induced the greatest TNFα secretion. These findings have implications for studies of air pollution and for efforts to better understand the underlying mechanisms.
研究是理解燃烧衍生颗粒物(cdPM)的生物学效应的第一步。绝大多数研究将细胞暴露于 cdPM 悬浮液中,这需要一种收集 cdPM 并将其悬浮在水介质中的方法。不同的颗粒收集方法对颗粒理化性质和产生的生物学反应的影响尚未完全了解。本研究调查了三种常见方法(过滤收集和冷板收集)和一种相对较新的方法(直接在去离子水中鼓泡)对颗粒收集的影响。这三种方法收集的 cdPM 在粒径分布、表面积、组成和氧化势方面存在差异。直接鼓泡的样品保留了最小粒径的颗粒和气相中观察到的双峰分布。鼓泡样品的质量中有约 50%是溶解物质和其他两种样品中未发现的低分子量化合物。cdPM 特性的这些差异影响了 THP-1 细胞的生物学反应。鼓泡样品显示出更高的氧化势和细胞内活性氧。刮取的样品诱导产生了最大量的 TNFα 分泌。这些发现对空气污染研究以及努力更好地理解潜在机制具有重要意义。